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Rapid and Sensitive Detection of an Intracellular Pathogen in Human Peripheral Leukocytes with Hybridizing Magnetic Relaxation Nanosensors

机译:杂交磁弛豫纳米传感器快速灵敏地检测人周围白细胞中的细胞内病原体

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摘要

Bacterial infections are still a major global healthcare problem. The quick and sensitive detection of pathogens responsible for these infections would facilitate correct diagnosis of the disease and expedite treatment. Of major importance are intracellular slow-growing pathogens that reside within peripheral leukocytes, evading recognition by the immune system and detection by traditional culture methods. Herein, we report the use of hybridizing magnetic nanosensors (hMRS) for the detection of an intracellular pathogen, Mycobacterium avium spp. paratuberculosis (MAP). The hMRS are designed to bind to a unique genomic sequence found in the MAP genome, causing significant changes in the sample’s magnetic resonance signal. Clinically relevant samples, including tissue and blood, were screened with hMRS and results were compared with traditional PCR analysis. Within less than an hour, the hMRS identified MAP-positive samples in a library of laboratory cultures, clinical isolates, blood and homogenized tissues. Comparison of the hMRS with culture methods in terms of prediction of disease state revealed that the hMRS outperformed established culture methods, while being significantly faster (1 hour vs 12 weeks). Additionally, using a single instrument and one nanoparticle preparation we were able to detect the intracellular bacterial target in clinical samples at the genomic and epitope levels. Overall, since the nanoparticles are robust in diverse environmental settings and substantially more affordable than PCR enzymes, the potential clinical and field-based use of hMRS in the multiplexed identification of microbial pathogens and other disease-related biomarkers via a single, deployable instrument in clinical and complex environmental samples is foreseen.
机译:细菌感染仍然是全球主要的医疗保健问题。快速而灵敏地检测引起这些感染的病原体将有助于正确诊断疾病并加快治疗。最重要的是存在于外周白细胞中的细胞内生长缓慢的病原体,它们逃避了免疫系统的识别,无法通过传统的培养方法进行检测。在本文中,我们报告了使用杂交磁性纳米传感器(hMRS)检测细胞内病原体鸟分枝杆菌spp。副结核病(MAP)。 hMRS旨在与MAP基因组中发现的独特基因组序列结合,从而导致样品的磁共振信号发生重大变化。使用hMRS筛选包括组织和血液在内的临床相关样本,并将结果与​​传统PCR分析进行比较。在不到一个小时的时间内,hMRS在实验室培养物,临床分离株,血液和均质组织的库中鉴定出MAP阳性样品。将hMRS与培养方法进行疾病状态预测方面的比较表明,hMRS优于既定的培养方法,但速度明显更快(1小时比12周)。此外,使用一台仪器和一种纳米颗粒制剂,我们能够以基因组和表位水平检测临床样品中的细胞内细菌靶标。总体而言,由于纳米颗粒在各种环境下均具有较强的稳定性,并且比PCR酶便宜得多,因此在临床中通过单一可部署的仪器在微生物病原体和其他疾病相关生物标志物的多重鉴定中,hMRS的潜在临床和基于现场的使用并且可以预见到复杂的环境样本。

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